Sound energy capturing system based on photonic crystal defect
A phononic crystal and defect technology, applied in the field of sound energy capture system, can solve the problem of less sound energy, etc., and achieve the effects of simple production process, strong designability, and low production technical requirements
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[0024] Implementation example: what this embodiment selects is water (its elastic parameter is: density ρ=1.0×10 3 Kg / m 3 , longitudinal wave velocity C l =1.48×10 3 m / s) in mercury (its elastic parameter is: density ρ=13.5×10 3 Kg / m 3 , longitudinal wave velocity C l =1.45×10 3 m / s) in the background of a 2D phononic crystal constructed with the optimal structure as described above. At this time, the energy band structure of the phononic crystal is as follows: figure 1 shown. figure 2 It is a cross-sectional schematic diagram of the structure of this embodiment, which is composed of two five-layer structural units, wherein the radius of the water column of the structure is 0.31a, and the radius of the central defective air column is respectively taken as r d =1.0r 0 、r d =0.7r 0 、r d =0.5r 0 、r d =0.3r 0 、r d =0, the lattice constant of the side length of the small square is a (a is 1-10cm). image 3 , 4 Respectively, the frequency of the defect band varies...
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